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载酮康唑的聚合物混合胶束的制剂学研究及其体内评估——以泊洛沙姆 188 为双重功能介导物,增强物理稳定性和经皮传递

Formulation and in vivo assessment of terconazole-loaded polymeric mixed micelles enriched with Cremophor EL as dual functioning mediator for augmenting physical stability and skin delivery.

机构信息

a Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy , Cairo University , Cairo , Egypt.

b Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy and Drug Manufacturing , Pharos University in Alexandria , Alexandria , Egypt.

出版信息

Drug Deliv. 2018 Nov;25(1):484-492. doi: 10.1080/10717544.2018.1436098.

Abstract

The aim of the current study was to formulate terconazole (TCZ) loaded polymeric mixed micelles (PMMs) incorporating Cremophor EL as a stabilizer and a penetration enhancer. A 2 full factorial design was performed using Design-Expert® software for the optimization of the PMMs which were formulated using Pluronic P123 and Pluronic F127 together with Cremophor EL. To confirm the role of Cremophor EL, PMMs formulation lacking Cremophor EL was prepared for the purpose of comparison. Results showed that the optimal PMMs formulation (F7, where the ratio of total Pluronics to drug was 40:1, the weight ratio of Pluronic P123 to Pluronic F127 was 4:1, and the percentage of Cremophor EL in aqueous phase was 5%) had a high micellar incorporation efficiency (92.98 ± 0.40%) and a very small micellar size (33.23 ± 8.00 nm). Transmission electron microscopy revealed that PMMs possess spherical shape and good dispersibility. The optimal PMMs exhibited superior physical stability when compared with the PMMs formulation of the same composition but lacking Cremophor EL. Ex vivo studies demonstrated that the optimal PMMs formula markedly improved the dermal TCZ delivery compared to PMMs lacking Cremophor EL and TCZ suspension. In addition, it was found that the optimal PMMs exhibited a greater extent of TCZ deposition in the rat dorsal skin relative to TCZ suspension. Moreover, histopathological studies revealed the safety of the optimal PMMs upon topical application to rats. Consequently, PMMs enriched with Cremophor EL, as a stable nano-system, could be promising for the skin delivery of TCZ.

摘要

本研究旨在制备载酮康唑(TCZ)的聚合物混合胶束(PMMs),其中包含作为稳定剂和渗透增强剂的聚氧乙烯蓖麻油(Cremophor EL)。使用 Design-Expert®软件进行了 2 因素完全实验设计,以优化 PMMs,该 PMMs 由 Pluronic P123 和 Pluronic F127 与 Cremophor EL 一起配制而成。为了确认 Cremophor EL 的作用,还制备了不含 Cremophor EL 的 PMMs 制剂进行比较。结果表明,最佳 PMMs 制剂(F7,其中总 Pluronic 与药物的比例为 40:1,Pluronic P123 与 Pluronic F127 的重量比为 4:1,水相 Cremophor EL 的百分比为 5%)具有高的胶束包封效率(92.98±0.40%)和非常小的胶束粒径(33.23±8.00nm)。透射电子显微镜显示,PMMs 具有球形和良好的分散性。与具有相同组成但不含 Cremophor EL 的 PMMs 制剂相比,最佳 PMMs 表现出优异的物理稳定性。体外研究表明,与不含 Cremophor EL 和 TCZ 混悬剂的 PMMs 相比,最佳 PMMs 配方显著提高了 TCZ 的经皮递送。此外,发现最佳 PMMs 相对于 TCZ 混悬剂在大鼠背部皮肤中具有更大程度的 TCZ 沉积。此外,组织病理学研究表明,最佳 PMMs 在大鼠局部应用时具有安全性。因此,富含 Cremophor EL 的 PMMs 作为稳定的纳米系统,可能有望用于 TCZ 的皮肤递送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8440/6058577/9d116bce0290/IDRD_A_1436098_F0001_C.jpg

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